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DNA Repair|December 7, 2020
Towards a comprehensive view of 8-oxo-7,8-dihydro-2'-deoxyguanosine: Highlighting the intertwined roles of DNA damage and epigenetics in genomic instabilityFrancesca Gorini, Giovanni Scala, Marcus S Cooke, et al.Molecular and Cellular Neurosciences|November 14, 2012
Cu-Zn superoxide dismutase activates muscarinic acetylcholine M1 receptor pathway in neuroblastoma cellsSimona Damiano, Tiziana Petrozziello, Valentina Ucci, et al.FEBS Letters|February 10, 2007
p14ARF interacts with N-Myc and inhibits its transcriptional activityStefano Amente, Barbara Gargano, Daniel Diolaiti, et al.Mutation Research|March 16, 2015
MYC impairs resolution of site-specific DNA double-strand breaks repairSusanna Ambrosio, Stefano Amente, Giuliana Napolitano, et al.Frontiers in Genetics|March 27, 2023
Epigenetics and immune cells in medulloblastomaFrancesca Gorini, Marco Miceli, Pasqualino de Antonellis, et al.FEBS Letters|January 27, 2005
Identification of proteins interacting with the RNAPII FCP1 phosphatase: FCP1 forms a complex with arginine methyltransferase PRMT5 and it is a substrate for PRMT5-mediated methylationStefano Amente, Giuliana Napolitano, Paolo Licciardo, et al.Nucleic Acids Research|August 13, 2011
Myc and PI3K/AKT signaling cooperatively repress FOXO3a-dependent PUMA and GADD45a gene expressionStefano Amente, Jiyuan Zhang, Miriam Lubrano Lavadera, et al.Cells|January 24, 2025
Targeting the 8-oxodG Base Excision Repair Pathway for Cancer TherapyAnna Piscone, Francesca Gorini, Susanna Ambrosio, et al.Nucleic Acids Research|February 1, 2003
The FCP1 phosphatase interacts with RNA polymerase II and with MEP50 a component of the methylosome complex involved in the assembly of snRNPPaolo Licciardo, Stefano Amente, Luca Ruggiero, et al.Cancer Biology & Therapy|January 18, 2006
p14ARF directly interacts with Myc through the Myc BoxII domainStefano Amente, Barbara Gargano, Francesca Varrone, et al.Pageof 5